Abstract:
The present disclosure relates to an effect of promoting hyaluronic acid synthesis of a pomegranate concentrate. A pomegranate concentrate, prepared by treating pomegranate with a starch-degrading enzyme and passing the same through a heating concentration process and having an ellagic acid content of 0.8 mg/g or higher and a polyphenol content of 8 mg/g or higher, has an effect of promoting hyaluronic acid. According to the present disclosure, hyaluronic acid synthesis can be promoted and skin moisturization can be improved by administering a food or pharmaceutical composition containing the pomegranate concentrate as an active ingredient to a subject in need of promotion of hyaluronic acid synthesis.
Abstract:
A method for testing an array for a pixel circuit of an organic light emitting diode display, which includes a first transistor that transmits a driving current corresponding to a data signal to an organic light emitting diode according to a scan signal and at least one capacitor, uses an array test device having a control device and a driver. The method includes performing a first irradiation of electron beams to an exposed portion of a first electrode of the at least one capacitor before manufacturing of the organic light emitting diode is completed, calibrating the control device of the array test device based on secondary electrons output by the at least one capacitor, performing a second irradiation of electron beams to an anode of the pixel circuit, and detecting whether the first transistor is normally operated based on an output amount of secondary electrons output by the anode.
Abstract:
A pixel includes an organic light emitting diode (OLED), a first transistor having a gate electrode coupled to a first node, a first electrode coupled to a first power supply, and a second electrode coupled to the OLED, a first capacitor for storing a data signal, and a second capacitor coupled between the first node and the second electrode of the first transistor to charge a voltage corresponding to the data signal and a threshold voltage of the first transistor, wherein, in a period where a voltage stored in the first capacitor is supplied to the first node, the second capacitor is electrically blocked from the first node.
Abstract:
An organic light-emitting display device includes a thin film transistor including an active layer, a gate electrode, source/drain electrodes, a first insulating layer between the active layer and the gate electrode, and a second insulating layer over the gate electrode; a pixel electrode on the first insulating layer and the second insulating layer and connected to the source or drain electrode; a first wire on the first insulating layer, of the same material as the gate electrode; a second wire on the second insulating layer to at least partially overlap the first wire and including a lower wiring layer of the same material as the pixel electrode and an upper wiring layer on the lower wiring layer, of the same material as the source/drain electrodes; and third insulating layers between the second insulating layer and the pixel electrode and between the second insulating layer and the second wire.
Abstract:
An organic light emitting diode display includes a substrate, a first pixel and a second pixel on the substrate, the first pixel and the second pixel have different sizes, a first driving voltage line and a second driving voltage line connected to the first pixel and the second pixel, respectively, and the first driving voltage line is capable of applying a first driving voltage to the first pixel and the second driving voltage line is capable of applying a second driving voltage to the second pixel. The second pixel is bigger than the first pixel, and the second driving voltage is less than the first driving voltage.
Abstract:
An organic light emitting display according to an exemplary embodiment of the present invention includes a transistor arranged on an insulating substrate, a pixel electrode connected to the transistor and including a reflective film, an optical path controller arranged on the pixel electrode, an auxiliary electrode arranged on the pixel electrode and the optical path controller, an organic light emitting member arranged on the organic light emitting member, and a common electrode arranged on the organic light emitting member, wherein the optical path controller has a lower light absorption coefficient than the auxiliary electrode.
Abstract:
An organic light emitting device comprises: one or more first transflective members disposed on the substrate; one or more pixel electrodes disposed on the respective one or more first transflective members; one or more first organic light emitting members disposed on the respective one or more pixel electrodes; one or more second transflective members disposed on the respective one or more first organic light emitting members; one or more second organic light emitting members disposed on the respective second transflective members; and a common electrode disposed on the one or more second organic light emitting members. Other embodiments are also provided.
Abstract:
An organic light emitting device comprises: one or more first transflective members disposed on the substrate; one or more pixel electrodes disposed on the respective one or more first transflective members; one or more first organic light emitting members disposed on the respective one or more pixel electrodes; one or more second transflective members disposed on the respective one or more first organic light emitting members; one or more second organic light emitting members disposed on the respective second transflective members; and a common electrode disposed on the one or more second organic light emitting members. Other embodiments are also provided.
Abstract:
The present invention relates to an organic light emitting display device and a manufacturing method thereof. The organic light emitting display device according to an exemplary embodiment of the present invention includes: a substrate; a plurality of thin film transistors disposed on the substrate; an overcoat disposed on the thin film transistor; a thin film pattern disposed on the overcoat, the thin film pattern comprising a plurality of first portions where the thin film is present and a plurality of second portions where the thin film is not present; a first electrode disposed on the thin film pattern; an organic light emitting member disposed on the first electrode; and a second electrode disposed on the organic light emitting member. The first portion and the second portion are alternately arranged.
Abstract:
A pixel includes an organic light emitting diode (OLED), a first transistor having a gate electrode coupled to a first node, a first electrode coupled to a first power supply, and a second electrode coupled to the OLED, a first capacitor for storing a data signal, and a second capacitor coupled between the first node and the second electrode of the first transistor to charge a voltage corresponding to the data signal and a threshold voltage of the first transistor, wherein, in a period where a voltage stored in the first capacitor is supplied to the first node, the second capacitor is electrically blocked from the first node.